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Načrtovanje in izdelava prototipa rotirajoče čistilne šobe
ID Mohorič, Žiga (Author), ID Nagode, Marko (Mentor) More about this mentor... This link opens in a new window, ID Oman, Simon (Comentor)

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Abstract
V diplomski nalogi smo obravnavali razvoj rotirajoče čistilne šobe za čiščenje kompleksnih površin s stisnjenim zrakom. Po pregledu obstoječih industrijskih rešitev smo zasnovali konstrukcijo, ki omogoča uporabo različnih izvedb šobe z menjavo rotirajočih rok, medtem ko osnovno ohišje ostane nespremenjeno. Izvedeni so bili analitični preračuni masnega in volumskega pretoka zraka, porabe stisnjenega zraka ter hitrosti iztoka. Na podlagi dobljenih rezultatov smo določili ustrezne geometrijske parametre izstopnih šob ter izdelali funkcionalni prototip iz aluminijeve zlitine. Lastnosti razvite šobe smo primerjali z obstoječo industrijsko rešitvijo proizvajalca KIST+ESCHERICH in ugotovili, da razvita konstrukcija dosega primerljive gabaritne mere ter omogoča bistveno nižje stroške izdelave. Končna rešitev služi kot osnova za nadaljnje eksperimentalno preverjanje učinkovitosti čiščenja in nadaljnjo optimizacijo konstrukcije.

Language:Slovenian
Keywords:rotirajoče čistilne šobe, stisnjen zrak, labirintna tesnila, konstruiranje, analitični preračuni, brezkontaktno čiščenje
Work type:Bachelor thesis/paper
Organization:FS - Faculty of Mechanical Engineering
Year:2026
PID:20.500.12556/RUL-185902 This link opens in a new window
Publication date in RUL:22.08.2026
Views:8
Downloads:2
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Secondary language

Language:English
Title:Design and development of a prototype rotary cleaning nozzle
Abstract:
This bachelor's thesis presents the design and development of a rotary cleaning nozzle intended for cleaning complex surfaces using compressed air. Based on a review of existing industrial solutions, a modular design was developed that enables different nozzle configurations by replacing the rotating arms while retaining the same housing. Analytical calculations were performed to determine the mass and volumetric air flow rates, compressed air consumption, and air outlet velocity. Based on the obtained results, the appropriate geometric parameters of the outlet nozzles were defined, and a functional prototype made of an aluminum alloy was manufactured. The developed nozzle was compared with an existing industrial solution manufactured by KIST+ESCHERICH. The comparison showed that the proposed design achieves comparable overall dimensions while significantly reducing manufacturing costs. The developed prototype provides a solid foundation for future experimental evaluation of cleaning performance and further optimization of the design.

Keywords:rotary cleaning nozzles, compressed air, labyrinth seals, mechanical design, analytical calculations, non-contact cleaning

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